Kondo Fumiya, Kamiya Narutoshi, Bekker Gert-Jan, Nagao Satoshi, Numoto Nobutaka, Sekiguchi Hiroshi, Ito Nobutoshi, Oda Masayuki
Graduate School of Life and Environmental Sciences, Kyoto Prefectural University, Kyoto 606-8522, Japan.
Graduate School of Information Science, University of Hyogo, Kobe, Hyogo 650-0047, Japan.
Biophys Physicobiol. 2025 Apr 24;22(2):e220009. doi: 10.2142/biophysico.bppb-v22.0009. eCollection 2025.
Enzyme function is often regulated by weak metal-ion binding, which results from conformational changes while maintaining conformational fluctuations. We analyzed the structure and function of cutinase-like enzyme, Cut190, using biophysical methods such as X-ray crystallography and molecular dynamics (MD) simulations, showing that its structure and function are finely regulated by weak Ca binding and release. We succeeded to stabilize the enzyme by introducing a disulfide-bond which can degrade polyethylene terephthalate (PET) to PET monomers at the glass transition temperature of PET, ≈70°C. In this study, using the stabilized Cut190 mutants, Cut190SS and Cut190SS_F77L, we evaluated the requirement of Ca for catalytic activity at 70°C, showing that the enzyme expressed the activity even in the absence of Ca, in contrast to that at 37°C. These results were supported by multicanonical MD analysis, which showed that the respective forms of the enzyme, such as closed, open, and engaged forms, were exchangeable, possibly because the potential energy barriers between the respective forms were lowered. Taken together, the conformational equilibrium to express the catalytic activity was regulated by weak Ca binding at 37°C, and was also regulated by increasing temperature. The respective conformational states of Cut190SS and Cut190SS_F77L correlated well with their different catalytic activities for PET.
酶的功能通常由弱金属离子结合调节,这种结合源于构象变化,同时保持构象波动。我们使用X射线晶体学和分子动力学(MD)模拟等生物物理方法分析了角质酶样酶Cut190的结构和功能,结果表明其结构和功能受弱钙结合和释放的精细调节。我们通过引入二硫键成功稳定了该酶,该酶能在聚对苯二甲酸乙二酯(PET)的玻璃化转变温度(约70°C)下将PET降解为PET单体。在本研究中,我们使用稳定的Cut190突变体Cut190SS和Cut190SS_F77L,评估了70°C下催化活性对钙的需求,结果表明与37°C时相比,该酶即使在没有钙的情况下也能表现出活性。多规范MD分析支持了这些结果,该分析表明酶的各种形式,如闭合、开放和结合形式,是可互换的,这可能是因为各形式之间的势能障碍降低了。综上所述,表达催化活性的构象平衡在37°C时受弱钙结合调节,同时也受温度升高的调节。Cut190SS和Cut190SS_F77L的各自构象状态与其对PET的不同催化活性密切相关。